Normative values of cervical range of motion for both children and adults: A systematic review
Tài liệu tham khảo
Adegoke, 2015, Intra-Rater reliabilities and concurrent validity of the universal goniometer and tape measure for measuring cervical active range of motion, J. Musculoskelet. Res., 18, 10.1142/S0218957715500050
Alahmari, 2017, Normal cervical spine range of motion using digital inclinometer in male asymptomatic subjects of Aseer, Saudi Arabia, Saudi J. Sports Med., 17, 40, 10.4103/1319-6308.197469
Arbogast, 2007, Normal cervical spine range of motion in children 3-12 years old, Spine, 32, E309, 10.1097/01.brs.0000261542.32649.1f
Assi, 2014, Kinematic evaluation of 4 pediatric collars and distribution of cervical movement between primary and coupled angles, J. Pediatr. Orthop., 34, 496, 10.1097/BPO.0000000000000135
Balogun, 1989, Inter- and intratester reliability of measuring neck motions with tape measure and Myrin® gravity-reference goniometer, J. Orthop. Sports Phys. Ther., 10, 248, 10.2519/jospt.1989.10.7.248
Barati, 2017, The effect of soft and rigid cervical collars on head and neck immobilization in healthy subjects, Asian spine j, 11, 390, 10.4184/asj.2017.11.3.390
Blanpied, 2017, Neck pain: revision 2017, J. Orthop. Sports Phys. Ther., 47, A1, 10.2519/jospt.2017.0302
Bramer, 2017, Reviewing retrieved references for inclusion in systematic reviews using EndNote, J. Med. Libr. Assoc., 105, 84, 10.5195/JMLA.2017.111
Bravata, 2001, Simple pooling versus combining in meta-analysis, Eval. Health Prof., 24, 218, 10.1177/01632780122034885
Buck, 1959, Study of normal range of motion in the neck utilizing a bubble goniometer, Arch. Phys. Med. Rehabil., 40, 390
Budelmann, 2016, A normative study of cervical range of motion measures including the flexion–rotation test in asymptomatic children: side-to-side variability and pain provocation, J. Man. Manip. Ther., 24, 185, 10.1179/2042618612Y.0000000026
Bulgheroni, 1998, A 3D kinematic method for evaluating voluntary movements of the cervical spine in humans, Funct. Neurol., 13, 239
Cagnie, 2007, Reliability and normative database of the Zebris cervical range-of-motion system in healthy controls with preliminary validation in a group of patients with neck pain, J. Manip. Physiol. Ther., 30, 450, 10.1016/j.jmpt.2007.05.003
Capuano-Pucci, 1991, Intratester and intertester reliability of the cervical range of motion device, Arch. Phys. Med. Rehabil., 72, 338
Castro, 2000, Noninvasive three-dimensional analysis of cervical spine motion in normal subjects in relation to age and sex: an experimental examination, Spine, 25, 443, 10.1097/00007632-200002150-00009
Castro, 2018, Isokinetic hip muscle strength: a systematic review of normative data, Sports BioMech., 1
Chen, 1999, Meta-analysis of normative cervical motion, Spine, 24, 1571, 10.1097/00007632-199908010-00011
Chi, 2005, Effect of hair and clothing on neck immobilization using a cervical collar, Am. J. Emerg. Med., 23, 386, 10.1016/j.ajem.2005.02.006
Childs, 2008, Neck pain: clinical practice guidelines linked to the international classification of functioning, disability, and health from the orthopedic section of the American physical Therapy association, J. Orthop. Sports Phys. Ther., 38, A1, 10.2519/jospt.2008.0303
Christensen, 1998, The reliability of measuring active and passive cervical range of motion: an observer-blinded and randomized repeated-measures design, J. Manip. Physiol. Ther., 21, 341
Cohen, 1960, A coefficient of agreement for nominal scales, Educ. Psychol. Meas., 20, 37, 10.1177/001316446002000104
Constable, 2017, A meta-analysis of clinical electro-oculography values, Doc. Ophthalmol., 135, 219, 10.1007/s10633-017-9616-8
Davies, 2016, Cervical range of motion, cervical and shoulder strength in senior versus age-grade Rugby Union International front-row forwards, Phys. Ther. Sport, 19, 36, 10.1016/j.ptsp.2015.10.001
de Koning, 2008, Clinimetric evaluation of active range of motion measures in patients with non-specific neck pain: a systematic review, Eur. Spine J., 17, 905, 10.1007/s00586-008-0656-3
Demaille-Wlodyka, 2007, Cervical range of motion and cephalic kinesthesis: ultrasonographic analysis by age and sex, Spine, 32, E254, 10.1097/01.brs.0000259919.82461.57
Dodds, 2016, Global variation in grip strength: a systematic review and meta-analysis of normative data, Age Ageing, 45, 209, 10.1093/ageing/afv192
Doriot, 2006, Effects of age and gender on maximum voluntary range of motion of the upper body joints, Ergonomics, 49, 269, 10.1080/00140130500489873
Downs, 1998, The feasibility of creating a checklist for the assessment of the methodological quality both of randomised and non-randomised studies of health care interventions, J. Epidemiol. Community Health, 52, 377, 10.1136/jech.52.6.377
Dvir, 2000, Reproducibility and instrument validity of a new ultrasonography-based system for measuring cervical spine kinematics, Clin. Biomech., 15, 658, 10.1016/S0268-0033(00)00033-4
Farooq, 2016, Reliability of the universal goniometer for assessing active cervical range of motion in asymptomatic healthy persons, Pak J Med Sci, 32, 457
Feipel, 1999, Normal global motion of the cervical spine: an electrogoniometric study, Clin. Biomech., 14, 462, 10.1016/S0268-0033(98)90098-5
Feipel, 1999, The use of disharmonic motion curves in problems of the cervical spine, Int. Orthop., 23, 205, 10.1007/s002640050351
Ferlic, 1962, The range of motion of the "normal" cervical spine, Bull. Johns Hopkins Hosp., 110, 59
Ferrario, 2002, Active range of motion of the head and cervical spine: a three-dimensional investigation in healthy young adults, J. Orthop. Res., 20, 122, 10.1016/S0736-0266(01)00079-1
Guo, 2011, The feasibility of using electromagnetic motion capture system to measure primary and coupled movements of cervical spine, J. Med. Biol. Eng., 31, 245, 10.5405/jmbe.721
Guth, 1995, A comparison of cervical rotation in age-matched adolescent competitive swimmers and healthy males, J. Orthop. Sports Phys. Ther., 21, 21, 10.2519/jospt.1995.21.1.21
Hamilton, 2014, Cervical isometric strength and range of motion of elite rugby union players: a cohort study, BMC Sports Sci. Med. Rehabil., 6, 10.1186/2052-1847-6-32
Hamilton, 2014, Comparative cervical profiles of adult and under-18 front-row rugby players: implications for playing policy, BMJ Open, 4, 10.1136/bmjopen-2014-004975
Henmi, 2006, A biomechanical study of activities of daily living using neck and upper limbs with an optical three-dimensional motion analysis system, Mod. Rheumatol., 16, 289, 10.3109/s10165-006-0499-x
Hole, 1995, Reliability and concurrent validity of two instruments for measuring cervical range of motion: effects of age and gender, Man. Ther., 1, 36, 10.1054/math.1995.0248
Hwang, 2015, Age and sex differences in ranges of motion and motion patterns, Int. J. Occup. Saf. Ergon., 21, 173, 10.1080/10803548.2015.1029301
Inokuchi, 2015, Neck range of motion measurements using a new three-dimensional motion analysis system: validity and repeatability, Eur. Spine J. : Off. Pub. Er. Spine Soc. Er. Spinal Deformity Soc. Er. Sec. Cervial Spine Res. Soc., 24, 2807, 10.1007/s00586-015-3913-2
Kauther, 2010, Biomechanics of the cervical spine correlated with pain in 4324 young adults with “Headspin” ability, neck pain or “Normal” biomechanics, Eur. Spine J., 19, 1999
Kim, 2013, Cervical coupling motion characteristics in healthy people using a wireless inertial measurement unit, Evid -Based Complement Altern. Med.., 2013
Kotte, 2018, Normative values of isometric elbow strength in healthy adults: a systematic review, Shoulder Elbow, 10, 207, 10.1177/1758573217748643
Kuhlman, 1993, Cervical range of motion in the elderly, Arch. Phys. Med. Rehabil., 74, 1071, 10.1016/0003-9993(93)90064-H
Kuo, 2009, Video based measurement of sagittal range of spinal motion in young and older adults, Man. Ther., 14, 618, 10.1016/j.math.2008.12.006
Landis, 1977, The measurement of observer agreement for categorical data, Biometrics, 33, 159, 10.2307/2529310
Lansade, 2009, Three-dimensional analysis of the cervical spine kinematics: effect of age and gender in healthy subjects, Spine, 34, 2900, 10.1097/BRS.0b013e3181b4f667
Lewandowski, 2003, The range of motion of the cervical spine in children aged from 3 to 7 years - an electrogoniometric study, Folia Morphol., 62, 459
Luedtke, 2016, International consensus on the most useful physical examination tests used by physiotherapists for patients with headache: a Delphi study, Man. Ther., 23, 17, 10.1016/j.math.2016.02.010
Lynch-Caris, 2008, Establishing reference values for cervical spine range of motion in pre-pubescent children, J. Biomech., 41, 2714, 10.1016/j.jbiomech.2008.06.021
Malmstrom, 2003, Spine, 28, E433, 10.1097/01.BRS.0000090840.45802.D4
Malmström, 2006, Primary and coupled cervical movements: the effect of age, gender, and body mass index. A 3-dimensional movement analysis of a population without symptoms of neck, Spine, 31, E44, 10.1097/01.brs.0000194841.83419.0b
McKay, 2017, Normative reference values for strength and flexibility of 1,000 children and adults, Neurology, 88, 36, 10.1212/WNL.0000000000003466
Miller, 2017, Normative values for colonic transit time and patient Assessment of constipation in adults with functional constipation: systematic review with meta-analysis, Clin. Med. Insights Gastroenterol., 11
Moher, 2009, Preferred reporting items for systematic reviews and meta-analyses: the PRISMA statement, J. Clin. Epidemiol., 62, 1006, 10.1016/j.jclinepi.2009.06.005
Natalis, 1999, Noninvasive, accurate and reliable measurement of the cervical spine motion with a 3D real-time ultrasound motion analyser, Ultraschall der Med., 20, 70, 10.1055/s-1999-14237
Nyland, 2004, Collegiate football players display more active cervical spine mobility than high school football players, J. Athl. Train., 39, 146
Pan, 2018, The effect of age and sex on the cervical range of motion – a systematic review and meta-analysis, J. Biomech., 75, 13, 10.1016/j.jbiomech.2018.04.047
Peolsson, 2000, Intra- and inter-tester reliability and range of motion of the neck, Physiother. Can., 52, 233
Petersen, 2000, Reliability of cervical range of motion using the OSI CA 6000 spine motion analyser on asymptomatic and symptomatic subjects, Man. Ther., 5, 82, 10.1054/math.2000.0232
Pourahmadi, 2018, A new iPhone application for measuring active craniocervical range of motion in patients with non-specific neck pain: a reliability and validity study, Spine J., 18, 447, 10.1016/j.spinee.2017.08.229
Ramiro, 2012, Spinal mobility measures in normal individuals-the mobility study, Arthritis Rheum., 64, S940
Schenkman, 1996, Relationships between mobility of axial structures and physical performance, Phys. Ther., 76, 276, 10.1093/ptj/76.3.276
Schöps, 1997, Age- and gender-related mobility of the cervical spine, Phys. Med. Rehabil. Kurortmed., 7, 80
Schreiber, 2001, Three-dimensional motion analysis to assess cervical spine function - measurement and reliability, Phys. Med. Rehabil. Kurortmed., 11, 113
Schuit, 1997, Validity and reliability of measures obtained from the OSI CA-6000 Spine Motion Analyzer for lumbar spinal motion, Man. Ther., 2, 206, 10.1054/math.1997.0301
Sforza, 2002, Three-dimensional analysis of active head and cervical spine range of motion: effect of age in healthy male subjects, Clin. Biomech., 17, 611, 10.1016/S0268-0033(02)00071-2
Smith, 2016, Performance of high school football players on clinical measures of deep cervical flexor endurance and cervical active range of motion: is history of concussion a factor?, Int. J. Sports Phys. Ther., 11, 156
Snodgrass, 2014, The clinical utility of cervical range of motion in diagnosis, prognosis, and evaluating the effects of manipulation: a systematic review, Physiotherapy, 100, 290, 10.1016/j.physio.2014.04.007
Song, 2018, Reliability and validity of a Coda Motion 3-D Analysis system for measuring cervical range of motion in healthy subjects, J. Electromyogr. Kinesiol., 38, 56, 10.1016/j.jelekin.2017.11.008
Stenneberg, 2017, To what degree does active cervical range of motion differ between patients with neck pain, patients with whiplash, and those without neck pain? A systematic review and meta-analysis, Arch. Phys. Med. Rehabil., 98, 1407, 10.1016/j.apmr.2016.10.003
Stenneberg, 2018, Concurrent validity and interrater reliability of a new smartphone application to assess 3D active cervical range of motion in patients with neck pain, Musculoskelet. Sci. Pract., 34, 59, 10.1016/j.msksp.2017.12.006
Swinkels, 2014, Normal values for cervical range of motion, Spine, 39, 362, 10.1097/BRS.0000000000000158
Szulc, 2011, The impact of rugby training on the spinal functional parameters, New Med., 2011-January, 46
Theobald, 2012, Do inertial sensors represent a viable method to reliably measure cervical spine range of motion?, Man. Ther., 17, 92, 10.1016/j.math.2011.06.007
Tomkinson, 2018, European normative values for physical fitness in children and adolescents aged 9-17 years: results from 2 779 165 Eurofit performances representing 30 countries, Br. J. Sports Med., 55, 1445, 10.1136/bjsports-2017-098253
Tommasi, 2009, Active head and cervical range of motion: effect of age in healthy females, Spine, 34, 1910, 10.1097/BRS.0b013e3181afe826
Tousignant-Laflamme, 2013, Reliability and criterion validity of two applications of the iPhone to measure cervical range of motion in healthy participants, J. NeuroEng. Rehabil., 10, 69, 10.1186/1743-0003-10-69
Trott, 1996, Three-dimensional analysis of active cervical motion: the effect of age and gender, Clin. BioMech., 11, 201, 10.1016/0268-0033(95)00072-0
Walmsley, 1996, The effect of initial head position on active cervical axial rotation range of motion in two age populations, Spine, 21, 2435, 10.1097/00007632-199611010-00005
Wendt, 2013, The effect of American football training on the angles of spinal curvatures and segmental mobility of the spine, New Med., 2013-January, 78
Whiting, 2003, The development of QUADAS: a tool for the quality assessment of studies of diagnostic accuracy included in systematic reviews, BMC Med. Res. Methodol., 3, 25, 10.1186/1471-2288-3-25
Williams, 2010, A systematic review of reliability and validity studies of methods for measuring active and passive cervical range of motion, J. Manipulative Physiol. Therapeut., 33, 138, 10.1016/j.jmpt.2009.12.009
Youdas, 1992, Normal range of motion of the cervical spine: an initial goniometric study, Phys. Ther., 72, 770, 10.1093/ptj/72.11.770